EP3081681B1 - BARRE POUR ÉlÉMENTS DE TRICOTAGE Á MAILLES JETÉES - Google Patents

BARRE POUR ÉlÉMENTS DE TRICOTAGE Á MAILLES JETÉES Download PDF

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Publication number
EP3081681B1
EP3081681B1 EP15163677.6A EP15163677A EP3081681B1 EP 3081681 B1 EP3081681 B1 EP 3081681B1 EP 15163677 A EP15163677 A EP 15163677A EP 3081681 B1 EP3081681 B1 EP 3081681B1
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EP
European Patent Office
Prior art keywords
knitting element
spring
bar according
element bar
spring device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP15163677.6A
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German (de)
English (en)
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EP3081681A1 (fr
Inventor
Martin Schorlemmer
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Karl Mayer Textilmaschinenfabrik GmbH
Original Assignee
Karl Mayer Textilmaschinenfabrik GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Karl Mayer Textilmaschinenfabrik GmbH filed Critical Karl Mayer Textilmaschinenfabrik GmbH
Priority to EP15163677.6A priority Critical patent/EP3081681B1/fr
Priority to CN201610068012.7A priority patent/CN106048878B/zh
Publication of EP3081681A1 publication Critical patent/EP3081681A1/fr
Application granted granted Critical
Publication of EP3081681B1 publication Critical patent/EP3081681B1/fr
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Classifications

    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B27/00Details of, or auxiliary devices incorporated in, warp knitting machines, restricted to machines of this kind
    • D04B27/10Devices for supplying, feeding, or guiding threads to needles
    • D04B27/24Thread guide bar assemblies
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B27/00Details of, or auxiliary devices incorporated in, warp knitting machines, restricted to machines of this kind
    • D04B27/02Warp-thread guides
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B27/00Details of, or auxiliary devices incorporated in, warp knitting machines, restricted to machines of this kind
    • D04B27/06Needle bars; Sinker bars
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B27/00Details of, or auxiliary devices incorporated in, warp knitting machines, restricted to machines of this kind
    • D04B27/10Devices for supplying, feeding, or guiding threads to needles
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B35/00Details of, or auxiliary devices incorporated in, knitting machines, not otherwise provided for
    • D04B35/10Indicating, warning, or safety devices, e.g. stop motions

Definitions

  • the invention relates to a knitting tool bar having a body extending in the longitudinal direction, which has a Wirkzeugfact.
  • DE 100 15 590 A1 shows a device for laying weft threads on a warp knitting machine.
  • a weft yarn guide is provided, which has a coil spring, which is in engagement with a damping element.
  • a knitting tool bar of the type mentioned is used in a warp knitting machine to move knitting tools.
  • the knitting tools include all elements involved in a stitching process, such as guide needles, knitting needles, pile boards, teetering comb boards, and the like. Here similar knitting tools must be moved similarly. Accordingly, similar knitting tools are arranged on a knitting tool bar.
  • the knitting tool bar is moved, and as a rule perpendicular to the longitudinal direction of the body.
  • guide bars can be added a movement in the longitudinal direction, a so-called offset movement.
  • a warp knitting machine may have a relatively large working width, for example 6m or more. Accordingly, the knitting tool bar must have a correspondingly large length.
  • the invention has for its object to enable high productivity in a warp knitting machine.
  • a problem in the operation of a warp knitting machine with higher working speeds is that the knitting tool bar tends to vibrate.
  • Even relatively small vibration amplitudes can sometimes lead to knitting tools of different knives bar collide with each other and thereby damaged. Even without collision can result in a swinging Wirktechnikmaschinebarre a knitted fabric that does not have the desired Meets requirements.
  • the absorber arrangement counteracts the formation of vibrations, ie it ensures that the amplitude of vibrations remains small or disturbing vibrations practically do not train. You can also ensure that disturbing natural frequencies are pushed out of the working speed range of the warp knitting machine. This makes it possible to pass through a hitherto critical speed range without the warp knitting machine suffering damage or increased wear occurring.
  • the Tilgeran Aunt is tuned to a resonant frequency of the body or the body with supports.
  • Such a configuration is particularly advantageous when the warp knitting machine excites the Wirktechnikmaschinebarre at a resonant frequency during startup or start.
  • This resonance frequency has hitherto always been a limitation for the maximum achievable working speed of the warp knitting machine. The working speed could only be chosen so high that a predetermined frequency distance to the resonant frequency was maintained.
  • the Tilgeran Aunt eliminates the oscillations formed in the resonant frequency by damping and / or shifting the frequency or at least their amplitude, so you drive through critical machine speeds readily and operate the warp knitting machine at a working speed can, in which an excitation frequency results on the Wirktechnikmaschinebarre, which is greater than the resonance frequency.
  • An important resonance frequency is dependent on the body and its supports, such as levers, etc.
  • the absorber arrangement can then be tuned, for example, to the resonance of the "lever pitch", that is to say the resonance of a bar and its support point.
  • the critical machine speeds can be traversed without the body and attached knitting tools resonating.
  • the body has a cavity arrangement and the absorber arrangement is arranged in the cavity arrangement.
  • the body is often hollow.
  • the absorber arrangement is then not visible from the outside. But it requires the outside of the knitting tool bar also no additional space, so that the knitting tool bar can be used without additional conversion measures of the warp knitting machine. From the absorber arrangement, however, fasteners outside the body can be visible.
  • the Tilgeran onion is designed as a passive Tilgeran nie.
  • the Tilgeranowski thus requires no energy from the outside to counteract the vibrations occurring or even to pay off completely. Accordingly, no power supply systems are required.
  • the Wirktechnikezugbarre can be used without further changes to the warp knitting machine.
  • the absorber arrangement comprises at least one mass element, which is in operative connection with a spring device which is connected to the body.
  • the mass element forms together with the spring means a spring-mass system, which in turn has a certain natural frequency. If this natural frequency is tuned to one or more resonant frequencies of the body, optionally including its supports, the vibrations in the resonant frequency or the resonant frequencies are eliminated.
  • the mass of the Tilgeran angel is changeable, so that the Tilgerfrequenz is variable.
  • the spring means comprises a spring assembly, a fiber composite spring and / or a plastic-metal spring.
  • a spring assembly is formed by a stacking of several layers of a spring material.
  • a spring assembly, a fiber composite spring and a plastic-metal spring each have a relatively large internal friction, so that the Tilgeranowskilich not only absorbs vibrations, but also dampens vibrations. The internal friction of the spring device removes the corresponding energy from the vibration.
  • the spring device has a first stiffness in a first direction and a second stiffness in a second direction, wherein the first direction differs from the second direction and the first stiffness differs from the second stiffness.
  • the Tilgeran angel can thus be anisotropic, ie they can develop different eradication effects in different directions and thus selectively counteract vibrations in different directions. This can be exploited, for example, when the knitting tool bar carries out a movement during operation of the warp knitting machine which has a plurality of directional components.
  • this is, for example, a movement in the offset direction, that is to say in the longitudinal direction of the carcass, and a "swing-through motion", that is to say a movement perpendicular to the longitudinal direction of the carcass.
  • different movements can result from the fact that the knitting tool bar is attached to a lever which is pivoted about a pivot point.
  • the Wirktechnikmaschinebarre is moved so to speak on a circular line, so that also result here different components of movement. This can be taken into account when designing the absorber arrangement with different stiffnesses in different directions.
  • the spring device has an adjustable spring action.
  • the spring effect can for example be adjusted by changing a bias of the spring device, or by changing an effective length of the spring device.
  • the adjustable spring action it is possible to "tune" the Tilgeran extract to the respective Wirktechnikmaschinebarre, ie the corresponding Tilgerfrequenz within certain limits to change.
  • One can therefore iteratively proceed and try out whether the absorber arrangement has the desired effect. If the Tilgeran himself not yet has the desired effect, it can be adjusted by adjusting the spring action of the spring means to the desired effect.
  • the spring means is formed integrally with the body.
  • the spring device in the manufacture of the body from a fiber-reinforced plastic, it is possible to secure the spring device in a wall of the carcass. This is particularly advantageous if the spring device is likewise formed from a fiber-reinforced plastic. Many knives are formed from a carbon fiber reinforced plastic.
  • the spring device can then be formed, for example, from a glass fiber reinforced plastic and protrude from the wall of the body into the cavity. Of course, it is also possible that the spring device protrudes outwards when the Tilgeran angel is arranged outside the body.
  • the absorber arrangement comprises a plurality of absorber units which are distributed in the longitudinal direction.
  • the knitting tool bar in the knitting machine has a plurality of fastening positions, which are also distributed in the longitudinal direction of the knitting tool bar. you can then counteract the vibrations of the body so to speak in sections.
  • absorber units are arranged. This is sufficient in many cases to calm the mostly free, unglued ends of the body.
  • At least two absorber units have different absorber masses.
  • the body has at least one fastening opening and at least one absorber unit is arranged in the region of the fastening opening.
  • the attachment aperture is often used to connect a knuckle mount or lever to the body. Since the wall of the body is then interrupted at this point anyway, you can also use this Befest Trents trimbruch to position the Tilgeriens inside the body.
  • the Tilgerü is connected to a knitting tool holder or a carcass attachment. With the assembly of the knitting tool holder or the body mounting, for example, a lever, the absorber unit is then automatically connected to the body of the knitting tool bar.
  • the joining of the absorber unit via the mechanism extractor has further advantages. Energy that is released in a stitch formation during the discount in the form of suddenly relaxing tee bar, is not passed as structure-borne noise in the body, but goes into heat in the Tilgerü directly over, as the impulse also from the knocking of the goods directly into the active tool holders is initiated.
  • the Tilgerleiter is releasably inserted into the body. This is possible in particular if the body has a relatively thick wall.
  • the detachable insertion can be realized for example by the fact that the Tilger necessarily is screwed into the body. This has the advantage that you can vote or change the resonant frequency by simply changing the Tilger necessarily. Furthermore, a simple replacement in case of repair is possible.
  • the Tilgerü is glued to the body. Again, this is a reliable mounting option.
  • Fig. 1 shows a knitting tool bar 1 having a body.
  • the body 2 is mainly formed of a carbon fiber reinforced plastic.
  • the body 2 has a knitting tool holder 3, to which a plurality of knitting tools 4, in the present case guide needles, are fastened next to each other.
  • a plurality of knitting tools 4 in the present case guide needles, are fastened next to each other.
  • the knitting tools 4 extend over the entire length of the knitting tool bar 1.
  • the body 2 is attached via brackets 5 not shown lege levers.
  • the levers can be pivoted to move the knitting tools 4 perpendicular to the plane of the drawing.
  • the active tool bar 1 can also be moved parallel to its longitudinal direction 6 in order to carry out a so-called offset movement.
  • other knitting tool bars such as a knitting needle bar, a Abtschkammplatinenbarre or a Polplatinenbarre, the movement in the longitudinal direction 6 is not possible.
  • the body 2 of the knitting tool bar 1 may have a length of several meters. A length of 6m or more is readily possible, At the same time you want to keep the mass of the body 2 as small as possible. This results in that the Wirktechnikmaschinebarre 1 tends to oscillate at certain frequencies. A particularly critical amplitude reaches one such vibration when the Wirktechnikmaschinebarre 1 oscillates at a resonant frequency of the body 2. Such a resonance frequency can be excited, for example, when starting up a warp knitting machine, if the rotational frequency of the main shaft or a multiple thereof coincides with the resonance frequency of the active tool bar 1.
  • the Tilgeran Aunt 7 is designed as a passive Tilgeran Aunt, d. H. it has no drive elements, which would have to be supplied externally controlled with a drive power.
  • the body 2 has one or more cavities 8, in which the Tilgeran Aunt 7 is arranged.
  • the absorber arrangement 7 has at least one mass element, in the present case a plurality of mass elements 9, 10.
  • the mass element 9 is in operative connection with a spring device 11.
  • the mass element 9 may for example be firmly connected to the spring device 11.
  • the spring device 11 is fixed to the body 2, so it is connected to the body 2 in connection.
  • a wall 12 of the body 2 for example, the so-called "upper belt", ie the top of the body 2 in operation, an opening 13 through which the mass element 9 can be inserted with the spring means 11 in the cavity 8.
  • the opening 13 is closed by a plate 14 which is fixed to the outside of the wall 12, for example, is glued there.
  • the mass member 10 is connected to a spring means 15 which is fixed to a plate 16 which is fixed from the outside to the wall 12 of the body 2.
  • a spring means 15 which is fixed to a plate 16 which is fixed from the outside to the wall 12 of the body 2.
  • Other mass elements that are not with a Reference numerals may be provided, as in Fig. 1 shown.
  • the masses of the mass elements 9, 10 may differ from each other.
  • the stiffness of the spring devices 11, 15 may differ.
  • Fig. 2 shows a modified form of attachment of the spring means 11 of the mass member 9 to the wall 12 of the body.
  • the opening 13 is provided with an internal thread 17 into which a threaded insert 18 is screwed, to which the spring device 11 is attached.
  • a certain thickness of the wall 12 is required.
  • Such an embodiment is also in the plate 14 after Fig. 1 possible.
  • the orientation of the spring device 11 depends on where and which vibrations occur and how these vibrations are to be eradicated or at least damped. While the spring means 11, 15 in Fig. 1 and 2 have an orientation substantially parallel to the direction of gravity, when the Wirktechnikmaschinebarre 1 is mounted in a warp knitting machine, an alignment of a spring element 11 is perpendicular to the direction of gravity possible. This is in Fig. 3 shown.
  • the spring element is designed as a spring assembly.
  • a spring assembly has a plurality of layers 19, 20, 21, each formed of a spring plate or a spring bar. These layers 19, 20, 21 abut each other. If as the spring device 11 is deformed, here creates a friction that acts to dampen.
  • the spring device 11 is formed as a fiber composite spring, for example, a glass fiber reinforced plastic.
  • This spring made of glass fiber reinforced Plastic also has a dampening effect because glass fiber reinforced plastic has a relatively high internal damping.
  • the spring device 11 may be formed relatively thin in this case.
  • Another alternative is to use a plastic-metal spring, in which a metal element with spring properties is poured into a plastic. Also, such a spring element has a relatively high internal damping, so that the absorber also causes a damping of the vibrations.
  • the absorber arrangement 7 can thus have a plurality of absorber units distributed in the longitudinal direction 6.
  • the spring device 11, 15 have an adjustable effective length.
  • the adjustable effective length can be realized, for example, that the free length of the spring device 11, 15 can be changed.
  • changing the free length of the spring device 11, 15 can be the corresponding Tilgerfrequenz change and adjust.
  • Another way to change the effective length of the spring means 11, 15, is to provide the spring means 11, 15 with a certain bias, wherein the bias voltage can be changed.
  • Fig. 4 shows one opposite Fig. 1 modified embodiment of a knitting tool bar 1, which is also designed as a guide bar.
  • a knitting tool bar 1 which is also designed as a guide bar.
  • the same elements are provided with the same reference numerals.
  • the absorber mass 9 extends in the longitudinal direction 6 of the guide bar 1.
  • the spring device 11 extends in the longitudinal direction 6 of the active tool bar 1. Perpendicular to the longitudinal direction 6, the spring device 11 has a substantially smaller thickness. This results in a direction-dependent stiffness of the spring device 11. In the longitudinal direction 6, the spring device 11 has a substantially greater rigidity than perpendicular to the longitudinal direction. 6
  • Fig. 5 an embodiment in which a mass element 22 is integrated in a spring device 23.
  • the spring device 23 thus forms the absorber mass.
  • the spring device 23 is adhesively bonded to the inside of the wall 12 of the body 2 by means of an adhesive 24, for example a rubber-elastic adhesive (polyurethane adhesive).
  • Fig. 6 again shows the mass element 9 on the spring device 11, which in turn is attached via the plate 14 to the upper wall 12 of the body 2.
  • the illustration here corresponds to a sectional view of the knitting tool bar Fig. 1 ,
  • Fig. 7 shows a modified embodiment in which the spring device 11 is fixed to a side wall 25 of the body.
  • the side wall 25 is formed of a carbon fiber reinforced plastic (CFRP).
  • CFRP carbon fiber reinforced plastic
  • the spring device 11, which is formed here from a glass fiber reinforced plastic, is integrated into the side wall 25.
  • the side wall 25 has a formation 26, in which the spring device 11 is inserted. When curing the body, the spring device 11 is so to speak connected to side wall 25.
  • Fig. 8 shows a further embodiment in which the mass element 9 is integrated into the spring device 11.
  • the spring device 11 has a plastic, in which the mass element 9 is cast or cured.
  • the mass element 9 preferably has a same or a higher density than the material of the spring device. It is also possible that the spring device has a constant density. You could also distribute these or build the spring of different materials.
  • Fig. 9 shows schematically and increases the Wirkwerkmaschinebarre in the region of a knitting tool holder 3.
  • the knitting tool holder 3 here has a socket 27 for the knitting needles 4.
  • the body 2 has an opening 28, through which the spring device 11 has been introduced with the mass element 9 in the cavity 8 of the knitting tool bar 1.
  • the Tilgeriens formed from spring device 11 and mass element 9 to the holder 5.
  • the Tilgeriens must not necessarily be below the holder 5, but can be arranged via a lever arm in the antinode of a carcass portion between two brackets 5.
  • the absorber arrangement is arranged in the center of mass of the vibration mass of the body 2 of the active tool bar 1. However, this is not possible for constructive reasons in many cases.
  • the absorber arrangement 7 is in the present embodiments in Interior of the body 2 arranged. But it is also an arrangement outside the Wirkwerkmaschinebarre 1 possible.
  • the absorber arrangement 7 is expediently adapted to a natural frequency of the active tool bar 1, optionally as a function of the supports. If the active tool bar 1 is excited with this natural frequency, for example, by the rotation of the main shaft of the warp knitting machine, then vibrate the mass elements 9, 10 in the right design in anti-phase and thus erase the vibration of the active tool bar.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Vibration Prevention Devices (AREA)
  • Knitting Machines (AREA)

Claims (15)

  1. Barre pour outil de tricotage (1) comprenant un corps (2) s'étendant dans la direction longitudinale (6), qui présente un logement d'outil de tricotage (3), caractérisée en ce que le corps (2) présente un agencement d'amortissement (7) qui s'oppose à la formation d'oscillations.
  2. Barre pour outil de tricotage selon la revendication 1, caractérisée en ce que l'agencement d'amortissement (7) est adapté à une fréquence de résonance du corps (2) ou du corps avec des appuis.
  3. Barre pour outil de tricotage selon la revendication 1 ou 2, caractérisée en ce que l'agencement d'amortissement (7) est conçu sous la forme d'un agencement d'amortissement passif.
  4. Barre pour outil de tricotage selon l'une quelconque des revendications 1 à 3, caractérisée en ce que le corps (2) présente un agencement d'espace creux (8) et l'agencement d'amortissement (7) est agencé dans l'agencement d'espace creux (8).
  5. Barre pour outil de tricotage selon l'une quelconque des revendications 1 à 4, caractérisée en ce que l'agencement d'amortissement (7) présente au moins un élément de masse (9, 10, 22) qui coopère avec un dispositif à ressort (11, 15, 23), qui est relié au corps (2).
  6. Barre pour outil de tricotage selon la revendication 5, caractérisée en ce que le dispositif à ressort (9, 15, 23) présente un bloc-ressort, un ressort composite fibreux et/ou un ressort de métal et de matière synthétique.
  7. Barre pour outil de tricotage selon la revendication 5 ou 6, caractérisée en ce que le dispositif à ressort (11) présente dans une première direction une première rigidité et dans une seconde direction une seconde rigidité, dans lequel la première direction se distingue de la seconde direction et la première rigidité se distingue de la seconde rigidité.
  8. Barre pour outil de tricotage selon l'une quelconque des revendications 5 à 7, caractérisée en ce que le dispositif à ressort (11, 15, 23) présente un effet ressort réglable.
  9. Barre pour outil de tricotage selon l'une quelconque des revendications 5 à 8, caractérisée en ce que le dispositif à ressort (11) est conçu d'un seul tenant avec le corps (2).
  10. Barre pour outil de tricotage selon l'une quelconque des revendications 1 à 9, caractérisée en ce que l'agencement d'amortissement (7) présente plusieurs unités d'amortissement qui sont réparties dans la direction longitudinale (6).
  11. Barre pour outil de tricotage selon la revendication 10, caractérisée en ce qu'au moins deux unités d'amortissement présentent différentes masses d'amortisseur (9, 10).
  12. Barre pour outil de tricotage selon la revendication 10 ou 11, caractérisée en ce que le corps (2) présente au moins un passage de fixation (13, 28) et au moins une unité d'amortissement est agencée dans la zone du passage de fixation (28).
  13. Barre pour outil de tricotage selon la revendication 12, caractérisée en ce que l'unité d'amortissement est reliée à une monture d'outil de tricotage (27) ou à une fixation (5) du corps.
  14. Barre pour outil de tricotage selon l'une quelconque des revendications 10 à 12, caractérisée en ce que l'unité d'amortissement est insérée de manière amovible dans le corps (2).
  15. Barre pour outil de tricotage selon l'une quelconque des revendications 10 à 12, caractérisée en ce que l'unité d'amortissement (7) est collée au corps (2).
EP15163677.6A 2015-04-15 2015-04-15 BARRE POUR ÉlÉMENTS DE TRICOTAGE Á MAILLES JETÉES Active EP3081681B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP15163677.6A EP3081681B1 (fr) 2015-04-15 2015-04-15 BARRE POUR ÉlÉMENTS DE TRICOTAGE Á MAILLES JETÉES
CN201610068012.7A CN106048878B (zh) 2015-04-15 2016-02-01 成圈工具梳栉

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Application Number Priority Date Filing Date Title
EP15163677.6A EP3081681B1 (fr) 2015-04-15 2015-04-15 BARRE POUR ÉlÉMENTS DE TRICOTAGE Á MAILLES JETÉES

Publications (2)

Publication Number Publication Date
EP3081681A1 EP3081681A1 (fr) 2016-10-19
EP3081681B1 true EP3081681B1 (fr) 2017-03-22

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CN (1) CN106048878B (fr)

Cited By (1)

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KR20200110162A (ko) * 2019-03-15 2020-09-23 칼 마이어 알앤디 게엠베하 진동댐퍼를 갖는 워프 니팅 기계

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Publication number Priority date Publication date Assignee Title
EP3587644B1 (fr) * 2018-06-22 2021-03-10 KARL MAYER STOLL R&D GmbH Monture d'outil de tricotage
EP3933084B1 (fr) * 2020-06-29 2022-06-22 KARL MAYER STOLL R&D GmbH Métier à tricoter à chaîne avec un mécanisme de changement de direction
CN112281293B (zh) * 2020-10-22 2022-05-06 山东惠民展鹏网业有限公司 一种管状导纱针及其应用于经编机的编织工艺
EP4067546B1 (fr) * 2021-03-31 2023-05-03 KARL MAYER STOLL R&D GmbH Barre d'outils de tricotage mailles jetees

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US2166032A (en) * 1937-10-30 1939-07-11 Wirth Emil Wirkmaschinenfabrik Laying machine guide for warp knitting machines
DD228979A3 (de) * 1983-11-18 1985-10-23 Textima Veb K Naehwirkmaschine
DE3706856C1 (de) * 1987-03-04 1988-03-03 Groz & Soehne Theodor Gestanztes Strickwerkzeug fuer Textilmaschinen,insbesondere Strick- und Wirkmaschinen
JP2866499B2 (ja) * 1991-04-30 1999-03-08 株式会社バルダン ミシンにおける針棒装置
JPH0838778A (ja) * 1994-07-27 1996-02-13 Brother Ind Ltd ミシンの振動防止装置
DE10015590A1 (de) * 2000-03-29 2001-10-04 Cetex Chemnitzer Textilmaschin Vorrichtung zum Verlegen von Schussfadenscharen an einer Kettenwirkmaschine
DE102004000038A1 (de) * 2003-11-13 2005-07-28 Cetex Chemnitzer Textilmaschinenentwicklung Ggmbh Schwingungsgemindertes Maschinenelement wie Walze oder Traverse
EP2636781A1 (fr) * 2012-03-09 2013-09-11 Karl Mayer Textilmaschinenfabrik GmbH Barre d'alimentation d'une machine rectiligne
CN202595444U (zh) * 2012-04-30 2012-12-12 常州市武进五洋纺织机械有限公司 具有拉钉减振装置的经编机

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20200110162A (ko) * 2019-03-15 2020-09-23 칼 마이어 알앤디 게엠베하 진동댐퍼를 갖는 워프 니팅 기계
KR102347862B1 (ko) 2019-03-15 2022-01-05 칼 마이어 알앤디 게엠베하 진동댐퍼를 갖는 워프 니팅 기계

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CN106048878A (zh) 2016-10-26
CN106048878B (zh) 2018-05-08
EP3081681A1 (fr) 2016-10-19

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